Miwa K, Ohtsubo M, Denda K, Hisabori T, Date T, Yoshida M
Department of Life Science, Tokyo Institute of Technology, Kanagawa.
J Biochem. 1989 Oct;106(4):679-83. doi: 10.1093/oxfordjournals.jbchem.a122916.
Homogeneous populations of hybrid alpha 3 beta 3 gamma complexes of the thermostable F1-ATPase containing one, two, or three copies of the mutationally impaired beta subunits were produced using the solid phase reconstitution method. Two kinds of mutated beta subunits were used for the reconstitution, one of which lacked the ability to bind any adenine nucleotides. The complexes containing one impaired beta and two wild-type beta subunits retained a significant amount of ATPase activity with cooperative kinetics, whereas those containing two or three impaired beta subunits showed very little ATPase activity. These results imply that the catalysis of steady-state ATP hydrolysis can proceed even if one of the three beta subunits in F1-ATPase is not functional.
利用固相重组方法制备了含有一个、两个或三个突变受损β亚基拷贝的热稳定F1-ATPase杂交α3β3γ复合物的同质群体。两种突变的β亚基用于重组,其中一种缺乏结合任何腺嘌呤核苷酸的能力。含有一个受损β亚基和两个野生型β亚基的复合物通过协同动力学保留了大量的ATPase活性,而含有两个或三个受损β亚基的复合物显示出非常低的ATPase活性。这些结果表明,即使F1-ATPase的三个β亚基中的一个没有功能,稳态ATP水解的催化作用仍可进行。